An International Open Access Journal
News Scroll
E-mail Alerts
Subscribe for TOC Alerts
Search Articles
sidebar
Creative Commons License

References


Aktuganov GE, Melentyev AI, Shirokov AV (2003) Colloidal chitosan as an affinity adsorbent for the purification of chitosanase strain Bacilus sp. 739. Biotechnology (6): 3-9.

Astafurova TP, Morgalev YUN, Zotikova AP, Verkhoturova GS, Mikhailova SI, Burenina AA, Zaitseva TA, Postovalova VM, Tsytsareva LK, Borovikova GV (2011) Effect of titanium dioxide and alumina nanoparticles on the morphophysiological parameters of plants. TomskStateUniversityJournalBiology 1 (13): 113-122.

Brooker NL, Lagnanalle CD, Zlatanic A, Javni I, Petrovic Z (2007) Soy polyol formulations as novel seed treatments for the management of soil-borne diseases of soybean. Communications in Agricultural and Applied Biological Sciences 72: 35–43. https://www.ncbi.nlm.nih.gov/pubmed/18399422.

Bykova VM, Ezhova EA, Nemtsov SV (2004) Some aspects of the use of chitin and chitosan as flocculants. Agrarian Russia 5: 30-31.

Chau NH, Doan QH, Chu TH, Nguyen TT, Trong HD, Ngo QB (2019) Effects of Different Nanoscale Microelement-Containing Formulations for Presowing Seed Treatment on Growth of Soybean Seedlings. Journal of Chemistry Volume, Article ID 8060316, 8 pageshttps://doi.org/10.1155/2019/8060316

Cheng P, Chen X, Liu Q, Sun L, Luo Y, Shi J (2017) Fate and transformation of CuO nanoparticles in the soil-rice system during the lifecycle of rice plants. Environmental Science & Technology 51, 4907-4917.

Cheng W, Xu X, Wu F, Li J (2016) Synthesis of cavity-containing iron oxide nanoparticles by hydrothermal treatment of colloidal dispersion. Materials Letters 164: 210–212.

Chirkov SN (2002) Antiviral activity of chitosan. Applied Biochemistry and Microbiology 38 (1): 5-13.

Coman V, Oprea I, Leopold LF, Vodnar DC, Coman C (2019) Soybean Interaction with Engineered Nanomaterials: A Literature Review of Recent Data. Nanomaterials 9: 1248

Didenko LV, Gerasimenko DV, Konstantinova ND, Silkina TA, Avdienko ID, Bannikova GE, Varlamov VP (2005) Ultrastructural study of the effects of chitosan on Klebsiella and staphylococci. Bulletin of Experimental Biology and Medicine 140 (9): 343-347.

Egorov NP, Shafronov OD, Saratov DN, Egorov EV (2008) Development and conduct of an experimental assessment of the effectiveness of the use in plant growing of new types of fertilizers obtained using nanotechnology. Bulletin of the Nizhny Novgorod University. N.I. Lobachevsky. Chemistry 6: 94-99.

Fedorenko VF, Buklagin DS, Golubev IG (2006) Directions for the use of nanotechnology and nanomaterials in the agricultural sector and the tasks of information support for their development. M. Nanotechnology - production. Pp. 409-413.

Ge Y, Priester JH, Van De Werfhorst LC, Schimel JP, Holden PA (2013) Potential mechanisms and environmental controls of TiO 2 nanoparticle effects on soil bacterial communities. Environmental Science & Technology 47 (24), 14411 − 14417.

Gerasimenko DV, Avdienko ID, Bannikova GE, Zueva OYu, Varlamov VP (2004) Antibacterial activity of water soluble low molecular weight chitosans in relation to various microorganisms. Applied Biochemistry and Microbiology 40 (3): 301-306.

Ghormade V, Deshpande MV, Paknikar KM (2011) Perspectives for nano-biotechnology enabled protection and nutrition of plants. Biotechnology Advances 29 (6): 792 − 803.

Hernandez-Viezcas JA, Castillo-Michel H, Andrews JC, Cotte M, Rico C, Peralta-Videa JR, Ge Y, Priester JH, Holden PA, Gardea-Torresdey JL (2013) In situ synchrotron X-ray fluorescence mapping and speciation of CeO 2 and ZnO nanoparticles in soil cultivated soybean (Glycine max). ACS Nano 7 (2): 1415 − 1423.

Ilyin LA, Andrianova IE, Glushkov VA, Bannikova GE, Varlamov VP (2004) Therapeutic and prophylactic properties of low molecular weight chitosan in experimental radiation injury. Radiation biology. Radioecology 44 (5): 547-549.

Johansen A, Pedersen AL, Jensen KA, Karlson U, Hansen BM, Scott-Fordsand JJ, Winding A (2008) Effects of C 60 fullerene nanoparticles on soil bacteria and protozoans. Environmental Toxicology and Chemistry 27 (9): 1895 − 1903.

Kandrashina TF (2006) Influence of encapsulation of cotton seeds with polymer compositions on their germination. Abstract of diss. on sois. student step.kand. biol. sciences. Dushanbe,. P.135

Kulikov SN, Alimova FK, Zakharova NG, Nemtsev SV, Varlamov VP (2006a) Biological products with different mechanisms of action to combat potato fungal diseases. Applied Biochemistry and Microbiology 42 (1): 86-92.

 Kulikov SN, Chirkov SN, Ilyina AV, Lopatin SA, Varlamov VP (2006b) The effect of the molecular weight of chitosan on its antiviral activity in plants. Applied Biochemistry and Microbiology 42 (2): 224-228.

Lin D, Xing B (2007) Phytotoxicity of nanoparticles: inhibition of seed germination and root growth. Environmental Pollution 150: 243–250.

Lo?pez-Moreno ML, de la Rosa G, Hernández-Viezcas JA, Castillo-Michel H, Botez CE, Peralta-Videa JR, Gardea-Torresdey JL (2010) Evidence of the differential biotransformation and genotoxicity of ZnO and CeO 2 nanoparticles on soybean (Glycine max) plants. Environmental Science & Technology44, 7315–7320.

Milusheva RYu, Kodyakov AA, Ruban IN, Voropaeva NL, Rashidova SSh (2002) The effect of chitin and chitosan on the suppression of the pathogen Fuzarium oxysporium during encapsulation of rice seeds. Abstracts International scientific and practical Conference "Theoretical and practical foundations and prospects for the development of selection and seed production of cotton." Tashkent.Pp. 130-131.

Nowack B, Ranville JF, Diamond S, Gallego-Urrea JA, Metcalfe C, Rose J, Horne N, Koelmans AA, Klaine SJ (2012) Potential scenarios for nanomaterial release and subsequent alteration in the environment. Environmental Toxicology and Chemistry 31 (1): 50 − 59.

Pomogaylo AD, Rosenberg AS, Uflyand IE (2000) Metal nanoparticles in polymers. M  Chemistry, Pp.  672.

Priester JH, Ge Y, Mielke RE, Horst AM, Moritz SC, Espinosa K, Gelb J, Walker SL, Nisbet RM, An YJ, Schimel JP, Palmer RG, Hernandez-Viezcas JA, Zhao L, Gardea-Torresdey JL, Holden PA (2012) Soybean susceptibility to manufactured nanomaterials with evidence for food quality and soil fertility interruption. Proceedings of the National Academy of Sciences of the United States of America109 (37): 14734–14735.

Priester JH. Ge Y, Chang V, Stoimenov PK, Schimel JP, Stucky GD, Holden PA (2013) Assessing interactions of hydrophilic nanoscale TiO 2 with soil water. Journal of Nanoparticle Research 15 (9): 1899 DOI: 10.1007/s11051-013-1899-4.

Rashidova DK, Shpilevsky VN, Rashidova SSh, et al. (2008) The effectiveness of the use of the polymer formulation of chemical plant protection products UZHITAN. AGROILM-Tashkent  3: 23.

Rashidova SS, Voropaeva L, Kozubaev SS, Rashidova DK (2005) Encapsulation is an environmentally friendly factor in stimulating cotton seeds. New Advances in Chemistry and Chemical Technology of Plant Raw materials, Book-2, Barnaul-. -p. 619-622

Rashidova SSh, Milusheva RYu (2009) Chitin and chitosan Bombyxmori. Synthesis, properties and application. T., Fan Publishing House.Pp. 246

Rashidova SSh, Oksengendler BL, Turaeva NN (2013) Synergetics of encapsulation of seeds of agricultural crops. Monograph-Tashkent: Publishing house "FAN",  Pp. 125.

Rashidova SSh, Voropaeva NL (2006) Water-soluble polymer blends, Tashkent, Fan, Pp.187

Rashidova SSh., Voropaeva NL, Milusheva RYu, Akhymbetova G, Akhmedova H, Nightingale DI, Ruban IN (2006) Silkworm chitosan is a promising source of crop growth regulators. VIII Int. Confer. "Modern. Prospects in the research. chitin and chitosan ”(RosHit 2006) and the III Congress of Ross. Hit. Society. Kazan, June 13-17, p. 353-357.

RUz patent No. IAP 03956 Seed encapsulation method (2009) Rashidova S.Sh., Sarymsakov A.A., Ruban I.N., Rashidova D.K. and others. Official newsletter., No. 7.

Sendra M, Yeste MP, Gatica JM, Moreno-Garrido I, Blasco J (2017) Homoagglomeration and heteroagglomeration of TiO2, in nanoparticle and bulk form, onto freshwater and marine microalgae. Science of the Total Environment 592: 403–411.

Shah BR, Li Y, Jin W, An Y, He L, Li Z, Xu W, Li B (2016) Preparation and optimization of Pickering emulsion stabilized by chitosan-tripolyphosphate nanoparticles for curcumin encapsulation. Food Hydrocolloids 52: 369–377.

Stevanoic MM, Skapin SD, Bracko L, Milenkovic M, Petkovic J, Filipic M (2012) Poly (lactideco-glycolide)/silver nanoparticles: Synthesis, characterization, antimicrobial activity, cytotoxicity assessment and ROS-inducing potential. Polymer N53: 2818-2828.

Syrmolot OV (2015) Test results o f biological preparations in the control of root rots. In: Collection o f scientific articles based on materials o f the coordination meeting on soybean areas o f the Far East and Siberia held at 09-10 September 2015. Available at http://vniisoi.ru/wp-content/uploads/2014/11/Collection-of-scientific-articles-on-materials-of-the-coordination-meetings-soybeans-09-10.09.2015.pdf access on 15th August 2020.

Tamuly C, Saikia I, Hazarika M, Das MR (2014) Reduction of aromatic nitro compounds catalyzed by Biogenic CuO nanoparticles. RSC Advances 4: 53229–53236.

Tikhonov VE, Stepnova EA, Babak VG, Yamskov IA, Palma-Guerrero J, Jansson HB, Lopes-Llorea LV, Salinas J, Gerasimenko DV, Avdienko ID, Varlamov VP (2000) Bactericidal and antifungal activities of low molecular weight chitosan and its N-2/(3)-(dodec-2-enyl)succinoyl/-derivatives. Carbohudr Polymers 64 (1): 66-72.

Tong Z, Bischoff M, Nies L, Applegate B, Turco RF (2007) Impact of fullerene (C60) on a soil microbial community. Environmental Science & Technology 41 (8): 2985 − 2991.

Varlamov VP, Bannikova GE, Andrianova IE. et al. (2005) Prerequisites for the creation and possibility of using low molecular weight chitosan as an anti-radiation agent. Scientific basis for the protection of animals from eco toxicants, radionuclides and pathogens of dangerous infectious diseases. Materials of the international symposium. G. Kazan. Part 1, p. 289-294.

Vasyukova NI, Zinovieva SV, Ilyinskaya LI, Transition EA, Chalenko GI, Gerasimova NG, Ilyina AV, Varlamov VP,
Ozeretskovskaya OL (2001) Modulation of disease resistance of plants using water-soluble chitosan. Applied Biochemistry and Microbiology 37 (1) : 115-122.

Yoon SJ, Kwak JIl, Lee WM, Holden PA, An YJ (2014) Zinc oxide nanoparticles delay soybean development: A standard soil microcosm study. Ecotoxicology and Environmental Safety 100:  131–137.

Zeng DF, Zhang L (2010) A novel environmentally friendly soybean seed-coating agent. Acta Agriculturae Scandinavica, Section B-Soil & Plant Science 60 (6): 545–551,

Zorin EV (2004) Features of the effect of presowing treatment of potato tubers seeds with ultrafine powders and salts of iron and copper on their yield properties. M: Dis. Candidate of Agricultural Science- Pp. -124.

Editorial Board
Indexed & Listed In
Scimago Journal Rank
Track manuscript
Manuscript Statistics
Articles Statistics
Publication Statistics